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BQ76920EVM - BQ76920EVM

BQ76920EVM

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Texas Instruments

EVAL MODULE FOR BQ76920

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BQ76920EVM - BQ76920EVM

BQ76920EVM

Active
Texas Instruments

EVAL MODULE FOR BQ76920

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DocumentsDatasheet

Technical Specifications

Parameters and characteristics commom to parts in this series

SpecificationBQ76920EVMBQ76920 Series
Battery Chemistry-Multi-Chemistry
Fault Protection-Over Current, Short Circuit, Over/Under Voltage
FunctionBattery MonitorBattery Monitor
Interface-I2C
Mounting Type-Surface Mount
Number of Cells-5
Number of Cells-3
Operating Temperature-85 °C
Operating Temperature--40 °C
Package / Case-0.173 in
Package / Case-4.4 mm
Package / Case-20-TSSOP
Secondary AttributesGraphical User Interface (GUI)Graphical User Interface (GUI)
Supplied ContentsBoard(s), Cable(s)Board(s), Cable(s)
Supplier Device Package-20-TSSOP
TypePower ManagementPower Management
Utilized IC / PartBQ76920, BQ78350BQ76920, BQ78350

Pricing

Prices provided here are for design reference only. For realtime values and availability, please visit the distributors directly

DistributorPackageQuantity$
DigikeyBox 1$ 178.80

BQ76920 Series

3 to 5-Series Cell Li-Ion and Li-Phosphate Battery Monitor (bq76940 Family)

PartFunctionUtilized IC / PartSupplied ContentsTypeSecondary AttributesFault ProtectionBattery ChemistryNumber of Cells [Max]Number of Cells [Min]Supplier Device PackageOperating Temperature [Max]Operating Temperature [Min]Package / CasePackage / CasePackage / CaseInterfaceMounting Type
Texas Instruments
BQ76920EVM
Battery Monitor
BQ76920, BQ78350
Board(s), Cable(s)
Power Management
Graphical User Interface (GUI)
Texas Instruments
BQ7692003PWR
Battery Monitor
Over Current, Over/Under Voltage, Short Circuit
Multi-Chemistry
5
3
20-TSSOP
85 °C
-40 °C
0.173 in
4.4 mm
20-TSSOP
I2C
Surface Mount
Texas Instruments
BQ7692000PWR
Battery Monitor
Over Current, Over/Under Voltage, Short Circuit
Multi-Chemistry
5
3
20-TSSOP
85 °C
-40 °C
0.173 in
4.4 mm
20-TSSOP
I2C
Surface Mount
Texas Instruments
BQ7692000PW
Battery Monitor
Over Current, Over/Under Voltage, Short Circuit
Multi-Chemistry
5
3
20-TSSOP
85 °C
-40 °C
0.173 in
4.4 mm
20-TSSOP
I2C
Surface Mount
Texas Instruments
BQ7692006PWR
Battery Monitor
Over Current, Over/Under Voltage, Short Circuit
Multi-Chemistry
5
3
20-TSSOP
85 °C
-40 °C
0.173 in
4.4 mm
20-TSSOP
I2C
Surface Mount
Texas Instruments
BQ7692006PW
Battery Monitor
Over Current, Over/Under Voltage, Short Circuit
Multi-Chemistry
5
3
20-TSSOP
85 °C
-40 °C
0.173 in
4.4 mm
20-TSSOP
I2C
Surface Mount
Texas Instruments
BQ7692003PW
Battery Monitor
Over Current, Over/Under Voltage, Short Circuit
Multi-Chemistry
5
3
20-TSSOP
85 °C
-40 °C
0.173 in
4.4 mm
20-TSSOP
I2C
Surface Mount

Description

General part information

BQ76920 Series

The BQ769x0 family of robust analog front-end (AFE) devices serves as part of a complete pack monitoring and protection solution for next-generation, high-power systems, such as light electric vehicles, power tools, and uninterruptible power supplies. The BQ769x0 is designed with low power in mind: Sub-blocks within the IC may be enabled or disabled to control the overall chip current consumption, and a SHIP mode provides a simple way to put the pack into an ultra-low power state.

The BQ76920 device supports up to 5-series cells or typical 18-V packs, the BQ76930 handles up to 10-series cells or typical 36-V packs, and the BQ76940 works for up to 15-series cells or typical 48-V packs. A variety of battery chemistries may be managed with these AFEs, including Li-ion, Li-iron phosphate, and more. Through I2C, a host controller can use the BQ769x0 to implement many battery pack management functions, such as monitoring (cell voltages, pack current, pack temperatures), protection (controlling charge/discharge FETs), and balancing. Integrated A/D converters enable a purely digital readout of critical system parameters, with calibration handled in TI’s manufacturing process.

The BQ769x0 family of robust analog front-end (AFE) devices serves as part of a complete pack monitoring and protection solution for next-generation, high-power systems, such as light electric vehicles, power tools, and uninterruptible power supplies. The BQ769x0 is designed with low power in mind: Sub-blocks within the IC may be enabled or disabled to control the overall chip current consumption, and a SHIP mode provides a simple way to put the pack into an ultra-low power state.

Documents

Technical documentation and resources